Literature DB >> 31054469

Unraveling the impact of Pto4CL1 regulation on the cell wall components and wood properties of perennial transgenic Populus tomentosa.

Jia-Qi Hu1, Qi Qi1, Yan-Ling Zhao2, Xiao-Ming Tian1, Hai Lu1, Ying Gai3, Xiang-Ning Jiang4.   

Abstract

Cell wall components and structure impact the physical and mechanical properties of plants, thereby affecting wood applications. Lignin is the most abundant biopolymer after cellulose in the wood cell wall and can be modified by certain lignin biosynthesis enzymes. 4-Coumarate: coenzyme A ligase(4CL) is an important lignin biosynthesis enzyme. To demonstrate the impact of the regulation of Pto4CL1 from poplar on wood properties, we analyzed the composition and anatomy of 5-year-old Pto4CL1-modified poplar cell walls, assessing the density, strength, volume shrinkage, and impact toughness of the transgenic trees. These results showed that the up-regulation of Pto4CL1 increased the lignin content to 46.65% from 33.11% in the control plants, while hydrophilic polysaccharides such as cellulose, hemi-cellulose, and pectin decreased. In contrast, the down-regulation of Pto4CL1 resulted in a reduction in lignin content to 27.39%, and the content of cellulose and hemi-cellulose showed compensatory variation. Raman spectroscopy showed that the change in lignin in the transgenic events was embodied in the deposition and concentration of lignin in the secondary cell wall. Moreover, the increased lignin content caused significantly increased wood strength and slightly increased wood density. In contrast, a reduction in lignin content resulted in a significant decrease in wood strength and a slight decrease in wood density. However, the Pto4CL1-modified trees had similar stiffness to the control group. We also found a significant decrease in volume shrinkage and increase in impact toughness in the low-lignin events. These results indicate that Pto4CL1 regulation alters the chemical composition of plant cell walls and these changes affect the physical and mechanical properties of the wood.
Copyright © 2019 Elsevier Masson SAS. All rights reserved.

Entities:  

Keywords:  Lignin; MOE; MOR; Perennial transgenic Populus tomentosa; Pto4CL1; Wood density

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Year:  2019        PMID: 31054469     DOI: 10.1016/j.plaphy.2019.03.035

Source DB:  PubMed          Journal:  Plant Physiol Biochem        ISSN: 0981-9428            Impact factor:   4.270


  2 in total

1.  Characterization and functional analysis of the Hydroxycinnamoyl-CoA: shikimate hydroxycinnamoyl transferase (HCT) gene family in poplar.

Authors:  Nan Chao; Qi Qi; Shuang Li; Brent Ruan; Xiangning Jiang; Ying Gai
Journal:  PeerJ       Date:  2021-02-25       Impact factor: 2.984

2.  Comparative Transcriptome and Anatomic Characteristics of Stems in Two Alfalfa Genotypes.

Authors:  Jierui Wu; Xiaoyu Wang; Ruxue Zhang; Qingwen Fu; Fang Tang; Fengling Shi; Buhe Temuer; Zhiqiang Zhang
Journal:  Plants (Basel)       Date:  2022-10-03
  2 in total

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